Mostrando 1,841 - 1,860 Resultados de 1,885 Para Buscar '"Populus"', tiempo de consulta: 0.77s Limitar resultados
  1. 1841
    “…RESULTS: The transcriptomes and metabolomes of a control and a high putrescine (HP) producing cell line of poplar (Populus nigra x maximowiczii) were compared using microarrays and GC/MS. …”
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  2. 1842
    “…Twenty-four Actinobacteria strains, isolated from Arundo donax, Eucalyptus camaldulensis and Populus nigra biomass during natural biodegradation and with potential enzymatic activities specific for the degradation of lignocellulosic materials, were identified by a polyphasic approach. …”
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  3. 1843
    “…We designed and validated a luciferase transcriptional reporter using the 5′ sequence upstream ATG of Populus tremula × alba LHY2 gene. We showed the robustness of this reporter line under long day and continuous light conditions. …”
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  4. 1844
    por Gao, Yang, Tian, Jing, Pang, Yue, Liu, Jiabin
    Publicado 2017
    “…In the Mu Us Desert, northwest China, we selected a shifting sand land (SL) and three nearby forestlands (Populus alba) with ages of 8 (P-8), 20 (P-20) and 30 (P-30) years, and measured SIC, SOC, soil organic and inorganic δ(13)C values (δ(13)C-SOC and δ(13)C-SIC) and other soil properties. …”
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  5. 1845
    “…RESULTS: We investigated the effects of LHW pretreatment with different severity factors (log R (0)) on the structural changes of fast-grown poplar (Populus trichocarpa). With the severity factor ranging from 3.6 to 4.2, LHW pretreatment resulted in a substantial xylan solubilization by 50–77% (w/w, dry matter). …”
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  6. 1846
    “…In an effort to produce reliably contained transgenic trees, we used the CRISPR/Cas9 system to alter three genes expected to be required for normal flowering in poplar (genus Populus). We designed synthetic guide RNAs (sgRNAs) to target the poplar homolog of the floral meristem identity gene, LEAFY (LFY), and the two poplar orthologs of the floral organ identity gene AGAMOUS (AG). …”
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  7. 1847
    “…RESULTS: Here, we investigate the effects of the bacterium Pseudomonas fluorescens SBW25 (SBW25) on aspen root transcriptome using a tripartite laboratory community comprised of Populus tremuloides (aspen) seedlings and the ectomycorrhizal fungus Laccaria bicolor (Laccaria). …”
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  8. 1848
    “…A two-tiered combinatoric investigation of lignocellulosic biomass deconstruction was undertaken with three biocatalysts (Clostridium thermocellum, Caldicellulosiruptor bescii, Novozymes Cellic(®) Ctec2 and Htec2), three transgenic switchgrass plant lines (COMT, MYB4, GAUT4) and their respective nontransgenic controls, two Populus natural variants, and augmentation of biological attack using either mechanical cotreatment or cosolvent-enhanced lignocellulosic fractionation (CELF) pretreatment. …”
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  9. 1849
    por Clifton‐Brown, John, Harfouche, Antoine, Casler, Michael D., Dylan Jones, Huw, Macalpine, William J., Murphy‐Bokern, Donal, Smart, Lawrence B., Adler, Anneli, Ashman, Chris, Awty‐Carroll, Danny, Bastien, Catherine, Bopper, Sebastian, Botnari, Vasile, Brancourt‐Hulmel, Maryse, Chen, Zhiyong, Clark, Lindsay V., Cosentino, Salvatore, Dalton, Sue, Davey, Chris, Dolstra, Oene, Donnison, Iain, Flavell, Richard, Greef, Joerg, Hanley, Steve, Hastings, Astley, Hertzberg, Magnus, Hsu, Tsai‐Wen, Huang, Lin S., Iurato, Antonella, Jensen, Elaine, Jin, Xiaoli, Jørgensen, Uffe, Kiesel, Andreas, Kim, Do‐Soon, Liu, Jianxiu, McCalmont, Jon P., McMahon, Bernard G., Mos, Michal, Robson, Paul, Sacks, Erik J., Sandu, Anatolii, Scalici, Giovanni, Schwarz, Kai, Scordia, Danilo, Shafiei, Reza, Shield, Ian, Slavov, Gancho, Stanton, Brian J., Swaminathan, Kankshita, Taylor, Gail, Torres, Andres F., Trindade, Luisa M., Tschaplinski, Timothy, Tuskan, Gerald A., Yamada, Toshihiko, Yeon Yu, Chang, Zalesny, Ronald S., Zong, Junqin, Lewandowski, Iris
    Publicado 2018
    “…This paper documents the breeding progress to date for four perennial biomass crops (PBCs) that have high output–input energy ratios: namely Panicum virgatum (switchgrass), species of the genera Miscanthus (miscanthus), Salix (willow) and Populus (poplar). For each crop, we report on the size of germplasm collections, the efforts to date to phenotype and genotype, the diversity available for breeding and on the scale of breeding work as indicated by number of attempted crosses. …”
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  10. 1850
  11. 1851
    “…We investigated g(s) responses to simulated decadal increments in CO(2) predicted over the next 4 decades and tested how measurements of g(s) may differ when two alternative sampling methods are employed (infrared gas analyzer [IRGA] vs. leaf porometer). We exposed Populus tremula, Popolus tremuloides and Sambucus racemosa to four different CO(2) concentrations over 126 days in experimental growth chambers at 350, 420, 490 and 560 ppm CO(2); representing the years 1987, 2025, 2051, and 2070, respectively (RCP4.5 scenario). …”
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  12. 1852
    “…Here, we assay 17 lines of unpretreated transgenic black cottonwood (Populus trichocarpa) utilizing a lignocellulose-degrading, metabolically engineered bacterium, Caldicellulosiruptor bescii. …”
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  13. 1853
    por Shen, Gangxu, Jia, Yong, Wang, Wei-Lung
    Publicado 2021
    “…The keratin-like domains of Malus domestica and Populus trichocarpa B proteins differed from those in other angiosperms, suggesting that a novel regulatory network might have evolved in these species. …”
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  14. 1854
    “…After five generations of successive inoculation and harvest of urediniospores from the compatible host Populus purdomii, the isolate ΔTs(06) steadily maintained more than 20% multiple nucleus spores. …”
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  15. 1855
    “…To illustrate the breadth of our utility for classifying metagenome viruses, we analyzed data from a plant metagenome study identifying genotypic and compartment specific differences between two Populus genotypes in three different compartments. …”
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  16. 1856
    “…RESULTS: A salt-inducible NAC transcription factor gene PagNAC045 was isolated from Populus alba×P. glandulosa. The PagNAC045 had a high sequence similarity with NAC045 (Potri.007G099400.1) in P. trichocarpa, and they both contained the same conserved motifs 1 and 2, which constitute the highly conserved NAM domain at the N-terminus. …”
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  17. 1857
    “…BACKGROUND: Gene conversion has an important effect on duplicate genes produced by polyploidization. Poplar (Populus trichocarpa) and willow (Salix brachista) are leading models and excellent green plants in the Salicaceae. …”
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  18. 1858
    “…BACKGROUND: Populus davidiana × P. bollena is a species of poplar from northeastern China that is characterized by cold resistance and fast growth but now suffers from pathogen infections. …”
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  19. 1859
    “…Here, we evaluate the light-dependence of acetate transport and assimilation in Populus trichocarpa trees using the dynamic xylem solution injection (DXSI) method developed here for continuous studies of C1 and C2 organic acid transport and light-dependent metabolism. …”
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  20. 1860
    “…Here, the effect on global gene expression as well as on physiological changes in leaves transiently expressing five homologs of the transcription factor WRINKLED1 (WRI1) originating from diverse species and tissues; Arabidopsis thaliana and potato (Solanum tuberosum) seed embryo, poplar (Populus trichocarpa) stem cambium, oat (Avena sativa) grain endosperm, and nutsedge (Cyperus esculentus) tuber parenchyma, were studied by agroinfiltration in Nicotiana benthamiana. …”
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